A simple harmonic oscillator consists of a mass m attached to a spring with spring constant k, with displacement given by x = A sin(@t + ø) . Which one of the following is NOT true? The frequency is independent of the amplitude The potential energy is a maximum when (@t + p) = 0 The kinetic energy is a maximum when (@t + p) = 0 O The restoring force must be proportional to the negative of the displacement Increasing the mass will decrease the frequency
A simple harmonic oscillator consists of a mass m attached to a spring with spring constant k, with displacement given by x = A sin(@t + ø) . Which one of the following is NOT true? The frequency is independent of the amplitude The potential energy is a maximum when (@t + p) = 0 The kinetic energy is a maximum when (@t + p) = 0 O The restoring force must be proportional to the negative of the displacement Increasing the mass will decrease the frequency
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A sin(@t + p). Which one of the following is NOT true?
X =
O The frequency is independent of the amplitude
The potential energy is a maximum when (@t + p) = 0
The kinetic energy is a maximum when (@t + p) = 0
The restoring force must be proportional to the negative of the displacement
O Increasing the mass will decrease the frequency
O oo O O"
Transcribed Image Text:A simple harmonic oscillator consists of a mass m attached to a spring with spring constant k, with displacement given by
A sin(@t + p). Which one of the following is NOT true?
X =
O The frequency is independent of the amplitude
The potential energy is a maximum when (@t + p) = 0
The kinetic energy is a maximum when (@t + p) = 0
The restoring force must be proportional to the negative of the displacement
O Increasing the mass will decrease the frequency
O oo O O
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